화학공학소재연구정보센터
검색결과 : 15건
No. Article
1 Metalloporphyrins immobilized in Fe3O4@SiO2 mesoporous submicrospheres: Reusable biomimetic catalysts for hydrocarbon oxidation
Barbosa IA, de Sousa PC, da Silva DL, Zanardi FB, Zanatta LD, de Oliveira AJA, Serra OA, Iamamoto Y
Journal of Colloid and Interface Science, 469, 296, 2016
2 Magnetite particle surface attrition model in dense phase gas-solid fluidized bed for dry coal beneficiation
Zhang B, Zhao YM, Duan CL, Tang LG, Dong L, Qu JZ
Advanced Powder Technology, 25(3), 1031, 2014
3 Characterization of the deposition and transport of magnetite particles in supercritical water
Karakama K, Rogak SN, Alfantazi A
Journal of Supercritical Fluids, 71, 11, 2012
4 Preparation of silver nanoparticles on the surface of fine magnetite particles by a chemical reduction
Lee B, Koo S
Journal of Industrial and Engineering Chemistry, 17(4), 762, 2011
5 Silica coated magnetite particles for magnetic removal of Hg2+ from water
Girginova PI, Daniel-Da-Silva AL, Lopes CB, Figueira P, Otero M, Amaral VS, Pereira E, Trindade T
Journal of Colloid and Interface Science, 345(2), 234, 2010
6 Evidence of direct crystal growth and presence of hollow microspheres in magnetite particles prepared by oxidation of Fe(OH)(2)
Vereda F, Rodriguez-Gonzalez B, de Vicente J, Hidalgo-Alvarez R
Journal of Colloid and Interface Science, 318(2), 520, 2008
7 Preparation and characterization of magnetic polymeric composite particles by miniemulsion polymerization
Lu SH, Forcada J
Journal of Polymer Science Part A: Polymer Chemistry, 44(13), 4187, 2006
8 Complexation of sugars with dihydroxyborylphenyl groups attached to magnetite particles via graft polymerization of acrylic acid
Shimomura M, Ono B, Oshima K, Miyauchi S
Polymer, 47(16), 5785, 2006
9 Magnetic carrier for radionuclide removal from aqueous wastes: Parameters investigated in the development of nanoscale magnetite based carbamoyl methyl phosphine oxide
Ambashta RD, Wattal PK, Singh S, Bahadur D
Separation Science and Technology, 41(5), 925, 2006
10 Retention of paramagnetic particles by magnetite particle clusters with multifunctional character
Ebner AD, Ritter JA
Separation Science and Technology, 39(12), 2785, 2004